Oxalate secretion by ectomycorrhizal Paxillus involutus is mineral-specific and controls calcium weathering from minerals
Trees and their associated rhizosphere organisms play a major role in mineral weathering
driving calcium fluxes from the continents to the oceans that ultimately control long-term
atmospheric CO2 and climate through the geochemical carbon cycle. Photosynthate
allocation to tree roots and their mycorrhizal fungi is hypothesized to fuel the active secretion
of protons and organic chelators that enhance calcium dissolution at fungal-mineral
interfaces. This was tested using 14CO2 supplied to shoots of Pinus sylvestris …
driving calcium fluxes from the continents to the oceans that ultimately control long-term
atmospheric CO2 and climate through the geochemical carbon cycle. Photosynthate
allocation to tree roots and their mycorrhizal fungi is hypothesized to fuel the active secretion
of protons and organic chelators that enhance calcium dissolution at fungal-mineral
interfaces. This was tested using 14CO2 supplied to shoots of Pinus sylvestris …
[HTML][HTML] Oxalate secretion by ectomycorrhizal Paxillus involutus is mineral-specific and controls calcium weathering from minerals
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Trees and their associated rhizosphere organisms play a major role in mineral weathering
driving calcium fluxes from the continents to the oceans that ultimately control long-term
atmospheric CO 2 and climate through the geochemical carbon cycle. Photosynthate
allocation to tree roots and their mycorrhizal fungi is hypothesized to fuel the active secretion
of protons and organic chelators that enhance calcium dissolution at fungal-mineral
interfaces. This was tested using 14 CO 2 supplied to shoots of Pinus sylvestris …
driving calcium fluxes from the continents to the oceans that ultimately control long-term
atmospheric CO 2 and climate through the geochemical carbon cycle. Photosynthate
allocation to tree roots and their mycorrhizal fungi is hypothesized to fuel the active secretion
of protons and organic chelators that enhance calcium dissolution at fungal-mineral
interfaces. This was tested using 14 CO 2 supplied to shoots of Pinus sylvestris …
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